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glutathione electrochemical detection sensor for reductase based on screen-printed electrodes coated with 3,5-dinitrobenzoic acid-modified carbon nanotubes | Microchimica Acta Design and Development of a

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The RNAi therapy targeting the SOD1 gene has shown some effects in animal models, reducing the SOD1 protein levels and delaying the disease onset and progression (4446)

glutathione electrochemical detection sensor for reductase based on screen-printed electrodes coated with 3,5-dinitrobenzoic acid-modified carbon nanotubes | Microchimica Acta Design and Development of a

10.1074/jbc.M203213200 215 YoungR

glutathione electrochemical detection sensor for reductase based on screen-printed electrodes coated with 3,5-dinitrobenzoic acid-modified carbon nanotubes | Microchimica Acta Design and Development of a

One unit, one protocol

glutathione electrochemical detection sensor for reductase based on screen-printed electrodes coated with 3,5-dinitrobenzoic acid-modified carbon nanotubes | Microchimica Acta Design and Development of a

Researchers identified a short FOXO4p53 interaction region and converted it into a D-retro-inverso peptide to improve stability and cell permeability

glutathione electrochemical detection sensor for reductase based on screen-printed electrodes coated with 3,5-dinitrobenzoic acid-modified carbon nanotubes | Microchimica Acta Design and Development of a

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